<p>A1: “50 cm + 50 cm” one row of maize and one row of soybean; A2: “160 cm + 40 cm” two rows of maize with wide-narrow row planting, where two rows of soybeans were planted in wide row with 40 cm; and with 60 cm row spacing between maize and soybean. CK: row spacing of soybeans in the sole cropping system was 70 cm.</p
The photosynthetic photon flux density (PPFD) of relay-intercropped maize (a, c) and soybean (b, d) ...
Maize/soybean strip intercropping is a commonly used system throughout China with high crop yields a...
The relationship between transpiration and root distribution under different spatial arrangements of...
The biomass distribution of relay-intercropped maize (a, c) and soybean (b, d) at tasseling, grain f...
<p>Changes in the aboveground biomass accumulation and distribution of soybean in the maize-soybean ...
Traditional maize (Zea mays L.) and soybean (Glycine max (L) Merrill) intercropping practice cannot ...
A, B, C and D represent the general layout of 2M2S (40 cm + 160 cm; maize narrow-wide row planting, ...
The leaf area of relay-intercropped maize (a, c) and soybean (b, d) at tasseling, grain filling and ...
Strip width management is a critical factor for producing higher crop yields in relay intercropping ...
Narrow-row planting patterns directly affect crop yield and competition in intercropping systems. A ...
Planting arrangements affect radiation use efficiency (RUE) and competitiveness of intercrop species...
Double-row strip cropping: This system reduces the plant spacing of maize rows to open up space for ...
The change for row spacing of intercropped maize directly affects production of intercropping system...
The chlorophyll content of relay-intercropped maize (a) and soybean (b) at tasseling, grain filling ...
<p>Soybean yield and component factors in maize–soybean relay-strip intercropping systems.</p
The photosynthetic photon flux density (PPFD) of relay-intercropped maize (a, c) and soybean (b, d) ...
Maize/soybean strip intercropping is a commonly used system throughout China with high crop yields a...
The relationship between transpiration and root distribution under different spatial arrangements of...
The biomass distribution of relay-intercropped maize (a, c) and soybean (b, d) at tasseling, grain f...
<p>Changes in the aboveground biomass accumulation and distribution of soybean in the maize-soybean ...
Traditional maize (Zea mays L.) and soybean (Glycine max (L) Merrill) intercropping practice cannot ...
A, B, C and D represent the general layout of 2M2S (40 cm + 160 cm; maize narrow-wide row planting, ...
The leaf area of relay-intercropped maize (a, c) and soybean (b, d) at tasseling, grain filling and ...
Strip width management is a critical factor for producing higher crop yields in relay intercropping ...
Narrow-row planting patterns directly affect crop yield and competition in intercropping systems. A ...
Planting arrangements affect radiation use efficiency (RUE) and competitiveness of intercrop species...
Double-row strip cropping: This system reduces the plant spacing of maize rows to open up space for ...
The change for row spacing of intercropped maize directly affects production of intercropping system...
The chlorophyll content of relay-intercropped maize (a) and soybean (b) at tasseling, grain filling ...
<p>Soybean yield and component factors in maize–soybean relay-strip intercropping systems.</p
The photosynthetic photon flux density (PPFD) of relay-intercropped maize (a, c) and soybean (b, d) ...
Maize/soybean strip intercropping is a commonly used system throughout China with high crop yields a...
The relationship between transpiration and root distribution under different spatial arrangements of...