Suppr超能文献

双免耕与叶面施磷耦合微生物菌剂对玉米-小麦轮作中玉米生产力和品质的影响。

Double zero tillage and foliar phosphorus fertilization coupled with microbial inoculants enhance maize productivity and quality in a maize-wheat rotation.

机构信息

ICAR-Indian Agricultural Research Institute, New Delhi, 110 012, India.

ICAR-Central Potato Research Institute, Shimla, Himachal Pradesh, 171 001, India.

出版信息

Sci Rep. 2022 Feb 24;12(1):3161. doi: 10.1038/s41598-022-07148-w.

Abstract

Maize is an important industrial crop where yield and quality enhancement both assume greater importance. Clean production technologies like conservation agriculture and integrated nutrient management hold the key to enhance productivity and quality besides improving soil health and environment. Hence, maize productivity and quality were assessed under a maize-wheat cropping system (MWCS) using four crop-establishment and tillage management practices [FBCT-FBCT (Flat bed-conventional tillage both in maize and wheat); RBCT-RBZT (Raised bed-CT in maize and raised bed-zero tillage in wheat); FBZT-FBZT (FBZT both in maize and wheat); PRBZT-PRBZT (Permanent raised bed-ZT both in maize and wheat], and five P-fertilization practices [P (100% soil applied-P); P + 2FSP (50% soil applied-P + 2 foliar-sprays of P through 2% DAP both in maize and wheat); P + PSB + AM-fungi; P + PSB + AMF + 2FSP; and P(100% NK with no-P)] in split-plot design replicated-thrice. Double zero-tilled PRBZT-PRBZT system significantly enhanced the maize grain, starch, protein and oil yield by 13.1-19% over conventional FBCT-FBCT. P + PSB + AMF + 2FSP, integrating soil applied-P, microbial-inoculants and foliar-P, had significantly higher grain, starch, protein and oil yield by 12.5-17.2% over P besides saving 34.7% fertilizer-P both in maize and on cropping-system basis. P + PSB + AMF + 2FSP again had significantly higher starch, lysine and tryptophan content by 4.6-10.4% over P due to sustained and synchronized P-bioavailability. Higher amylose content (24.1%) was observed in grains under P + PSB + AMF + 2FSP, a beneficial trait due to its lower glycemic-index highly required for diabetic patients, where current COVID-19 pandemic further necessitated the use of such dietary ingredients. Double zero-tilled PRBZT-PRBZT reported greater MUFA (oleic acid, 37.1%), MUFA: PUFA ratio and P/S index with 6.9% higher P/S index in corn-oil (an oil quality parameter highly required for heart-health) over RBCT-RBCT. MUFA, MUFA: PUFA ratio and P/S index were also higher under P + PSB + AMF + 2FSP; avowing the obvious role of foliar-P and microbial-inoculants in influencing maize fatty acid composition. Overall, double zero-tilled PRBZT-PRBZT with crop residue retention at 6 t/ha per year along with P + PSB + AMF + 2FSP while saving 34.7% fertilizer-P in MWCS, may prove beneficial in enhancing maize productivity and quality so as to reinforce the food and nutritional security besides boosting food, corn-oil and starch industry in south-Asia and collateral arid agro-ecologies across the globe.

摘要

玉米是一种重要的工业作物,其产量和品质的提高都显得尤为重要。清洁生产技术,如保护性农业和综合养分管理,是提高生产力和质量、改善土壤健康和环境的关键。因此,在玉米-小麦轮作系统(MWCS)下,采用四种作物种植和耕作管理措施[FBCT-FBCT(玉米和小麦均采用平床-常规耕作;RBCT-RBZT(玉米采用高床-CT,小麦采用高床-零耕);FBZT-FBZT(玉米和小麦均采用 FBZT);PRBZT-PRBZT(玉米和小麦均采用永久性高床-ZT)]和五种 P 施肥措施[P(100%土壤施用-P);P+2FSP(玉米和小麦各施用 50%土壤-P 和 2% DAP 叶面喷施 2 次);P+PSB+AM-真菌;P+PSB+AMF+2FSP;P(100% NK 无 P)],在三次重复的裂区设计中进行了评估。与传统的 FBCT-FBCT 相比,双免耕 PRBZT-PRBZT 系统显著提高了玉米籽粒、淀粉、蛋白质和油的产量,分别提高了 13.1-19%。P+PSB+AMF+2FSP 与 P 相比,除了在玉米和整个作物系统上分别节省 34.7%的肥料-P 外,还显著提高了 12.5-17.2%的籽粒、淀粉、蛋白质和油的产量。P+PSB+AMF+2FSP 再次通过持续和同步的 P 生物有效性,使淀粉、赖氨酸和色氨酸含量分别提高了 4.6-10.4%。由于其低血糖指数,在 P+PSB+AMF+2FSP 下,谷物中的直链淀粉含量(24.1%)更高,这是一种有益的特性,因为它对糖尿病患者非常需要,而当前的 COVID-19 大流行进一步需要使用这种饮食成分。与 RBCT-RBCT 相比,双免耕 PRBZT-PRBZT 报道了更高的 MUFA(油酸,37.1%)、MUFA:PUFA 比和 P/S 指数,玉米油中的 P/S 指数(心脏健康高度需要的油质量参数)高 6.9%。MUFA、MUFA:PUFA 比和 P/S 指数也在 P+PSB+AMF+2FSP 下更高;这表明叶面 P 和微生物接种剂在影响玉米脂肪酸组成方面发挥了明显作用。总的来说,在 MWCS 中,每年保留 6 吨/公顷的作物残留物,同时施用 P+PSB+AMF+2FSP,并节省 34.7%的肥料-P,双免耕 PRBZT-PRBZT 可能有助于提高玉米的生产力和质量,从而加强粮食和营养安全,同时促进南亚和全球干旱农业生态系统的粮食、玉米油和淀粉产业。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be9b/8873388/34fdabf333ca/41598_2022_7148_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验